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Titlebook: Atoms in Plasmas; Valery S. Lisitsa Book 1994 Springer-Verlag Berlin Heidelberg 1994 Atomic collosions.Laser spectrosocopy.Plasma.Plasma r

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Ermittlung von Informationsbedarf,nisms is the Doppler effect which causes an effective shift of the frequency of an atomic oscillator by an amount . is the wave vector of radiation whose frequency is ., and . is the velocity of an atom) [12.1–3].
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The Influence of Regular and Stochastic Accelerations on Atomic Spectra,nisms is the Doppler effect which causes an effective shift of the frequency of an atomic oscillator by an amount . is the wave vector of radiation whose frequency is ., and . is the velocity of an atom) [12.1–3].
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Atom in a Nonresonant Oscillating Electric Field,.M.) field with no regard for kinetic effects, which results in different relaxation mechanisms. We are dealing here with properties and spectra of the spontaneous emission of the system “atom plus external E.M. field”.
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Book 1994s an atom under the influence of different perturbations in plasmas, namely by electrical and magnetic fields, fields of plasma oscillations, laser and Planck-radiation fields, collisions with excited particles, stochastic accelerations, etc. The treatment covers fundamental aspects of modern physic
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Book 1994d Planck-radiation fields, collisions with excited particles, stochastic accelerations, etc. The treatment covers fundamental aspects of modern physics, such as atomic quantum mechanics and quantum optics, radiation and collisional processes in plasmas and gases, nonlinear laser spectroscopy, plasma diagnostics, etc.
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Fermi Method of Equivalent Photons and the Probabilities of Radiative-Collisional Transitions in At) and polarizational radiation (PLR)) processes in plasmas. The most natural domain of the KrED application is the physics of multicharged ions (MCI). The description of these processes is obtained within the framework of the following assumptions:
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